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Mainstem Bronchial Diameters and Dimensions in Infants and Children: A Systematic Review of the Literature
Tariq M Wani1, Carmen Simion1, Saif Rehman1
1Department of Anesthesia, Sidra Medicine, Doha, Qatar.
Insights
Standardized measurements of pediatric airway dimensions are lacking due to varied methods. More homogeneous data is needed to define right and left mainstem bronchi (RMB and LMB) sizes for medical device design.
Area of Science:
- Pediatric Pulmonology
- Medical Imaging
- Anatomy
Background:
- Anatomic measurements of the right (RMB) and left mainstem bronchi (LMB) in pediatric populations are crucial for medical applications.
- Previous studies have utilized various modalities to assess these dimensions.
Purpose of the Study:
- To determine if sufficient data exists for standardized lower airway dimensions in infants and children.
- To analyze existing literature on pediatric airway measurements.
Main Methods:
- A systematic review of 12 studies published between 1923 and 2020.
- Analysis of lower airway dimensions from 1,611 children.
- Inclusion of studies measuring RMB and LMB diameters using various techniques, with a focus on computed tomography.
Main Results:
- A progressive increase in RMB and LMB size with age was observed.
- The LMB-to-RMB ratio showed close approximation across studies.
- In infants under 1 year, RMB and LMB diameters ranged from 4-5 mm and 3-5 mm, respectively.
- Significant variation in measurement methods and modalities was noted.
Conclusions:
- Establishing standardized lower airway dimensions in the pediatric population is challenging due to methodological heterogeneity.
- Additional homogeneous data using standardized techniques is required.
- Standardized dimensions would aid in designing pediatric airway equipment, lung isolation devices, and stents.
Abstract:
Anatomic measurements of the right (RMB) and left mainstem bronchi (LMB) in infants and children have been accomplished using various modalities. The objective of the present review was to determine whether enough data were available to provide standardized lower airway dimensions in the pediatric population. For the present study, 12 studies with data of the lower pediatric airway dimensions of 1,611 children published from 1923-2020 were reviewed and analyzed. The eligible criteria included studies measuring lower airway dimensions in the pediatric population. Various techniques were used for airway measurement, with computed tomography studies being most abundant. There was a progressive increase in the size of RMB and LMB with age, with a close approximation of the LMB-to-RMB ratio across all studies. In children younger than 1 year old, the RMB and LMB diameters were between 4 and 5 mm and 3 and 5 mm, respectively. Overall, there was significant variation in the methods and modality used to obtain measurements, and therefore it was difficult to establish standardized lower airway dimensions in the pediatric population. Additional homogeneous data with standardized measurement techniques and modalities across different pediatric age groups are needed to define these dimensions further. Such data may be helpful in designing airway equipment, lung isolation devices, and airway stents.
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